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Optimal control of Permanent Magnet Synchronous machines for cold rolling mills

机译:冷轧机永磁同步电机的最优控制

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The objectives of the steel manufacturers are to improve their productivity and to optimize their process parameters to maximum efficiency and quality. In steel industry, the one or the more client motors are often arranged to follow the velocity of the master motor. The speed difference between these motors will affect the tension of the product. Hence, the synchronized control and the tension control are the important research topics in the strip manufacturing process. This paper proposes a novel multi-input-multi-output optimal control system for the synchronism control of dual motor system. The control strategy has in view the synchronization of the dual motor system in optimal manner combined with designing of an appropriate reference filter in order to obtain a zero steady state error between the references and the corresponding feedback signal values; the Permanent Magnet Synchronous Motors (PMSMs) operating with constant (rated) flux. The dual motor system was linearized in Matlab/ Simulink. This method employs a simplified model of the plant to be controlled. The simulated results indicate that the method is highly effective and the precision is better than that of the traditional state feedback methods [1]-[3]. Simulation results will show the feasibility and the practicability of the proposed optimal controller. A study of conventional control applied to permanent magnet synchronous motors has also been performed.
机译:钢铁制造商的目标是提高生产率并优化其工艺参数,以实现最大的效率和质量。在钢铁工业中,通常将一个或多个客户电动机布置为跟随主电动机的速度。这些电机之间的速度差会影响产品的张力。因此,同步控制和张力控制是带材制造过程中的重要研究课题。针对双电机系统的同步控制问题,提出了一种新颖的多输入多输出最优控制系统。鉴于双电动机系统的同步,控制策略以最佳方式与适当的参考滤波器的设计相结合,以便在参考值和相应的反馈信号值之间获得零稳态误差。以恒定(额定)磁通量运行的永磁同步电动机(PMSM)。在Matlab / Simulink中将双电机系统线性化。该方法采用了要控制的工厂的简化模型。仿真结果表明,该方法是有效的,其精度优于传统的状态反馈方法[1]-[3]。仿真结果表明了所提出的最优控制器的可行性和实用性。还已经对应用于永磁同步电动机的常规控制进行了研究。

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